242
D. Lloyd
98. D. Lloyd, S. Cortassa, B. O’Rourke, M.A. Aon, What yeast and cardiomyocytes share: ultradian oscillatory redox mechanisms of cellular coherence and survival. Integr. Biol. (Camb.)
4, 65–74 (2012)
99. D. Lloyd, S.W. Edwards, J.L. Williams, Oscillatory accumulation of total cellular protein in
Candida utilis. FEMS Microbiol. Lett. 12, 295–298 (1981)
100. D. Lloyd, M.A. Aon, S. Cortassa, Why homeodynamics, not homeostasis? Sci. World 1,
133–145 (2001)
101. D. Lloyd, L.E. Salgado, M.P. Turner, M.T.E. Suller, D.B. Murray, Cycles of mitochondrial energization driven by the ultradian clock in a culture of Saccharomyces cerevisiae.
Microbiology 148, 3715–3724 (2002)
102. D. Lloyd, K.M. Lemar, E.J. Salgado, T.M. Gould, D.B. Murray, Respiratory oscillations in
yeast: mitochondrial reactive species, apoptosis and time: a hypothesis. FEMS Yeast Res. 3,
333–339 (2003)
103. D. Lloyd, M.A. Aon, S. Cortassa, Rhythms, clocks and deterministic chaos in unicellular
organisms, in Rhythms in Plants, 2nd edn, ed. by S. Mancuso, Shabala (Springer SA Sham,
Switzerland, 2015), pp. 367–399
104. D. Lloyd, D.B. Murray, M.A. Aon, S. Cortassa, M.R. Roussel, M. Beckmann, R.K. Poole,
Temporal metabolic partitioning of the yeast and protist cellular networks: the cell is a global
scale-invariant (fractal or self-similar) multioscillator. J. Biomed. Opt. 24(5), 051404 (2018)
105. D. Lloyd, C.O. Millet, C.F. Williams, A.J. Hayes, S.J.A. Pope, I. Pope et al., Functional
imaging of a model unicell: Spironucleus vortens as an anaerobic but aerotolerant flagellated
protist. Adv. Microb. Physiol. 76 (2020). https://doi.org/10.1016/bs.ampbs.2020.01.002
106. Z. Lobo, P.K. Maitra, Phosphofructokinase mutants of yeast. Biochemistry and genetics. J.
Biol. Chem. 258(3), 1444–1449 (1983)
107. M. Lucas, J. Newman, A. Stefanovska, Stabilization of dynamics of oscillatory systems by
nonautonomous perturbation. Phys. Rev. D 97, 042209 (2018)
108. U. Lüttge, M-Th Hütt, High frequency or ultradian rhythms in plants. Prog. Bot. 65, 235–263
(2004)
109. V.N. Luzikov, in Mitochondrial Biogenesis and Breakdown, translated by A.V. Galkin, D.B.
Roodyn (Consultants Bureau, New York and London, 1984)
110. V.N. Luzikov, Principles of control over formation of structures responsible for respiratory
functions of mitochondria. Biochemistry (Moscow) 74, 1443–1456 (2009)
111. R. Machné, D.B. Murray, The yin and yang of yeast transcription: elements of a global
feedback system between metabolism and chromatin. PLoS One 7(6), e 37906 (2012)
112. R. Machné, D.B. Murray, P.F. Stadler, Similarity-based segmentation of multi-dimensional
signals. Sci. Rep. 7(1), 12355 (2017)
113. P.K. Maitra, Pulsating glucose flux in yeast. Biochem. Biophys. Res. Commun. 25(4), 462–467
(1966)
114. P.K. Maitra, Glucose and fructose metabolism in phosphoglucoisomerase-less mutant of
Saccharomyces cerevisiae. J. Bacteriol. 107, 759–769 (1970)
115. P.K. Maitra, A. Ghosh, B. Schoener, B. Chance, Transients in glycolytic metabolism following
electrical activity in electrophorus. Biochem. Biophys. Acta. 88, 112–119 (1964)
116. Y. Mano, Regulation system of protein synthesis in early embryogenesis in the sea urchin.
Biochem. Biophys. Res. Commun. 33, 877–882 (1968)
117. Y. Mano, Cytoplasmic regulation and cyclic variation in protein synthesis in the early cleavage
stage of the sea urchin embryo. Dev. Biol. 22, 433–460 (1970)
118. N. Marques, S.W. Edwards, J.C. Fry, F. Halberg, D. Lloyd, Temperature-compensated ultradian variation in cellular protein content of Acanthamoeba castellanii revisited. Prog. Clin.
Biol. Res. 227A, 105–119 (1987)
119. R.M. May, Simple mathematical models with very complicated dynamics. Nature 261(5560),
459–467 (1976)
120. M.R. McAinsh, A.A.R. Webb, J.E. Taylor, A.M. Hetherington, Stimulus-induced oscillations
in guard cell cytosolic free calcium. Plant Cell 7(8), 1207–1219 (1995)
D. Lloyd
98. D. Lloyd, S. Cortassa, B. O’Rourke, M.A. Aon, What yeast and cardiomyocytes share: ultradian oscillatory redox mechanisms of cellular coherence and survival. Integr. Biol. (Camb.)
4, 65–74 (2012)
99. D. Lloyd, S.W. Edwards, J.L. Williams, Oscillatory accumulation of total cellular protein in
Candida utilis. FEMS Microbiol. Lett. 12, 295–298 (1981)
100. D. Lloyd, M.A. Aon, S. Cortassa, Why homeodynamics, not homeostasis? Sci. World 1,
133–145 (2001)
101. D. Lloyd, L.E. Salgado, M.P. Turner, M.T.E. Suller, D.B. Murray, Cycles of mitochondrial energization driven by the ultradian clock in a culture of Saccharomyces cerevisiae.
Microbiology 148, 3715–3724 (2002)
102. D. Lloyd, K.M. Lemar, E.J. Salgado, T.M. Gould, D.B. Murray, Respiratory oscillations in
yeast: mitochondrial reactive species, apoptosis and time: a hypothesis. FEMS Yeast Res. 3,
333–339 (2003)
103. D. Lloyd, M.A. Aon, S. Cortassa, Rhythms, clocks and deterministic chaos in unicellular
organisms, in Rhythms in Plants, 2nd edn, ed. by S. Mancuso, Shabala (Springer SA Sham,
Switzerland, 2015), pp. 367–399
104. D. Lloyd, D.B. Murray, M.A. Aon, S. Cortassa, M.R. Roussel, M. Beckmann, R.K. Poole,
Temporal metabolic partitioning of the yeast and protist cellular networks: the cell is a global
scale-invariant (fractal or self-similar) multioscillator. J. Biomed. Opt. 24(5), 051404 (2018)
105. D. Lloyd, C.O. Millet, C.F. Williams, A.J. Hayes, S.J.A. Pope, I. Pope et al., Functional
imaging of a model unicell: Spironucleus vortens as an anaerobic but aerotolerant flagellated
protist. Adv. Microb. Physiol. 76 (2020). https://doi.org/10.1016/bs.ampbs.2020.01.002
106. Z. Lobo, P.K. Maitra, Phosphofructokinase mutants of yeast. Biochemistry and genetics. J.
Biol. Chem. 258(3), 1444–1449 (1983)
107. M. Lucas, J. Newman, A. Stefanovska, Stabilization of dynamics of oscillatory systems by
nonautonomous perturbation. Phys. Rev. D 97, 042209 (2018)
108. U. Lüttge, M-Th Hütt, High frequency or ultradian rhythms in plants. Prog. Bot. 65, 235–263
(2004)
109. V.N. Luzikov, in Mitochondrial Biogenesis and Breakdown, translated by A.V. Galkin, D.B.
Roodyn (Consultants Bureau, New York and London, 1984)
110. V.N. Luzikov, Principles of control over formation of structures responsible for respiratory
functions of mitochondria. Biochemistry (Moscow) 74, 1443–1456 (2009)
111. R. Machné, D.B. Murray, The yin and yang of yeast transcription: elements of a global
feedback system between metabolism and chromatin. PLoS One 7(6), e 37906 (2012)
112. R. Machné, D.B. Murray, P.F. Stadler, Similarity-based segmentation of multi-dimensional
signals. Sci. Rep. 7(1), 12355 (2017)
113. P.K. Maitra, Pulsating glucose flux in yeast. Biochem. Biophys. Res. Commun. 25(4), 462–467
(1966)
114. P.K. Maitra, Glucose and fructose metabolism in phosphoglucoisomerase-less mutant of
Saccharomyces cerevisiae. J. Bacteriol. 107, 759–769 (1970)
115. P.K. Maitra, A. Ghosh, B. Schoener, B. Chance, Transients in glycolytic metabolism following
electrical activity in electrophorus. Biochem. Biophys. Acta. 88, 112–119 (1964)
116. Y. Mano, Regulation system of protein synthesis in early embryogenesis in the sea urchin.
Biochem. Biophys. Res. Commun. 33, 877–882 (1968)
117. Y. Mano, Cytoplasmic regulation and cyclic variation in protein synthesis in the early cleavage
stage of the sea urchin embryo. Dev. Biol. 22, 433–460 (1970)
118. N. Marques, S.W. Edwards, J.C. Fry, F. Halberg, D. Lloyd, Temperature-compensated ultradian variation in cellular protein content of Acanthamoeba castellanii revisited. Prog. Clin.
Biol. Res. 227A, 105–119 (1987)
119. R.M. May, Simple mathematical models with very complicated dynamics. Nature 261(5560),
459–467 (1976)
120. M.R. McAinsh, A.A.R. Webb, J.E. Taylor, A.M. Hetherington, Stimulus-induced oscillations
in guard cell cytosolic free calcium. Plant Cell 7(8), 1207–1219 (1995)
